Download Seagull Models EDGE 540 Specifications

Transcript
EDGE 540
MS: 26
Hand-made Almost
Ready to
Fly R/C Model Aircraft
ASSEMBLY
MANUAL
“Graphics and specfications may change without notice”.
Specifications
Wingspan---------------------------------------- 77.5 in---------------------------- 197cm.
2.
Wing area--------------------------------------- 1023sq.in--------------------- 66 sq.dm.
Approximate flying weight------------------ 10.6-13lbs------------------- 4.8-5.8kg.
Length-------------------------------------------- 71 in------------------------------- 179cm.
Recommended engine size--------------- 1.60 cu.in---------------------- 2-stroke.
1.80 cu.in--------------- 4-stroke.
Radio System required 6 channel with 6 digital servos - 6.5kg/cm.
Flying skill level Intermediate/advanced.
Kit features.
•
•
•
Ready-made—minimal assembly & finishing required.
Ready-covered covering.
Photo-illustrated step-by-step Assembly Manual.
Made in Vietnam.
EDGE 540.
Instruction Manual.
INTRODUCTION.
Thank you for choosing the EDGE 540 ARTF by SEAGULL MODELS. The EDGE 540 was
designed with the intermediate/advanced sport flyer in mind. It is a semi scale airplane which is
easy to fly and quick to assemble. The airframe is conventionally built using balsa, plywood to make
it stronger than the average ARTF , yet the design allows the aeroplane to be kept light. You will find
that most of the work has been done for you already.Flying the EDGE 540 is simply a joy.
This instruction manual is designed to help you build a great flying aeroplane. Please read this
manual thoroughly before starting assembly of your EDGE 540. Use the parts listing below to identify
all parts.
WARNING.
Please be aware that this aeroplane is not a toy and if assembled or used incorrectly it
is capable of causing injury to people or property. WHEN YOU FLY THIS AEROPLANE YOU
ASSUME ALL RISK & RESPONSIBILITY.
If you are inexperienced with basic R/C flight we strongly recommend you contact your R/C
supplier and join your local R/C Model Flying Club. R/C Model Flying Clubs offer a variety of training
procedures designed to help the new pilot on his way to successful R/C flight. They will also be able
to advise on any insurance and safety regulations that may apply.
ADDITIONAL ITEMS REQUIRED.
1.60 2-stroke engine.
1.80 4-stroke engine.
Computer radio with digital servos 6.5kg/cm.
Glow plug to suit engine.
Propeller to suit engine.
Protective foam rubber for radio
system.
Silicone fuel line.
PARTS LISTING.
FUSELAGE ASSEMBLY
(1) Fuselage.
(1) Canopy hatch.
WING ASSEMBLY
(1) Right wing half / aileron.
(1) Left wing half / aileron.
(2) Aluminium dihedral brace.
Tail section assembly
TOOLS & SUPPLIES NEEDED.
Thick cyanoacrylate glue.
30 minute epoxy.
5 minute epoxy.
Hand or electric drill.
Assorted drill bits.
Modelling knife.
Straight edge ruler.
2mm ball driver.
Phillips head screwdriver.
220 grit sandpaper.
90° square or builder’s triangle.
Wire cutters.
Masking tape & T-pins.
Thread-lock.
Paper towels.
2
(2) Horizontal stabilizer / elevator
halves.
(1) Rudder halves
Some more parts.
HARDWARE PACK
COWLING
Landing gear.....
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NOTE: To avoid scratching your new aeroplane we suggest that you cover your
workbench with an old towel. Keep a
couple of jars or bowls handy to hold
the small parts after you open the
bags.
Please trial fit all parts. Make sure you
have the correct parts and that they fit
and are aligned properly before gluing!
This will ensure proper assembly as
the EDGE 540 is made from natural
materials and minor adjustments may
have to be made.
The paint and plastic parts used in
this kit are fuel proof. However, they
are not tolerant of many harsh chemicals including the following: paint
thinner, cyano-acrylate glue accelerator, cyanoacrylate glue de-bonder
and acetone. Do not let these chemicals come in contact with the colours
on the covering and the plastic parts.
T-pin.
Hinge.
3) Slide the aileron on the wing panel until
there is only a slight gap. The hinge is now
centered on the wing panel and aileron.
Remove the T-pins and snug the aileron
against the wing panel. A gap of 1/64” or less
should be maintained between the wing panel
and aileron.
T-pin.
Hinge.
HINGING THE AILERONS.
Note: The control surfaces, including the
ailerons, elevators, and rudder, are prehinged
with hinges installed, but the hinges are not
glued in place. It is imperative that you properly
adhere the hinges in place per the steps that
follow using a high-quality thin C/A glue.
4)Deflect the aileron and completely
saturate each hinge with thin C/A glue. The
ailerons front surface should lightly contact the
wing during this procedure. Ideally, when the
hinges are glued in place, a 1/64” gap or less
will be maintained throughout the lengh of the
aileron to the wing panel hinge line.
Note: The hinge is constructed of a special
material that allows the C/A to wick or penetrate
and distribute throughout the hinge, securely
bonding it to the wood structure of the wing
panel and aileron.
1) Carefully remove the aileron from one
of the wing panels. Note the position of the
hinges.
2) Remove each hinge from the wing panel
and aileron and place a T-pin in the center of
each hinge. Slide each hinge into the aileron
until the T-pin is snug against the aileron. This
will help ensure an equal amount of hinge is
on either side of the hinge line when the aileron
is mounted to the wing panel.
Hinge.
C/A glue.
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EDGE 540.
Instruction Manual.
5) Turn the wing panel over and deflect the
aileron in the opposite direction from the
opposite side. Apply thin C/A glue to each
hinge, making sure that the C/A penetrates into
both the aileron and wing panel.
Hinge.
INSTALLING THE AILERON SERVOS.
C/A glue.
Small weight.
6) Using C/A remover/debonder and a
paper towel, remove any excess C/A glue that
may have accumulated on the wing or in the
aileron hinge area.
7) Repeat this process with the other wing
panel, securely hinging the aileron in place.
8) After both ailerons are securely hinged,
firmly grasp the wing panel and aileron to
make sure the hinges are securely glued and
cannot be pulled out. Do this by carefully
applying medium pressure, trying to separate
the aileron from the wing panel. Use caution
not to crush the wing structure.
Note: Work the aileron up and down several
times to “work in” the hinges and check for
proper movement.
HINGING THE ELEVATORS.
Servo.
Thread.
We recommended to use long servos arm
for all servos without throttle servo.
Install the rubber grommets and brass
collets onto the aileron servo. Test fit the
servo into the aileron servo mount.
Because the size of servos differ, you
may need to adjust the size of the precut opening in the mount. The notch in the sides of
the mount allow the servo lead to pass through.
Using a small weight (Weighted fuel pick-up
works well) and thread, feed the string through
the wing as indicated.
Glue the elevator hinges in place using the
same tectniques used to hinge the ailerons.
Small weight.
Wing bottom.
HINGING THE RUDDER.
Glue the rudder hinges in place using the
same tectniques used to hinge the ailerons.
4
Small weight.
String.
Thread.
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Electric wire.
4x30mm.
Thread.
Mark and drill 4 holes for engine mount.
Attach the thread to the servo lead and
carefully thread it though the wing. Once you
have thread the lead throught the wing, remove
the string so it can use for the other servo
lead. Tape the servo lead to the wing to prevent
it from falling back into the wing.
Thread locker glue.
Secure the servos with the screws provided with your radio system.
Wing bottom.
FUEL TANK.
INSTALLING THE STOPPER ASSEMBLY.
1) Using a modeling knife, carefully cut
off the rear portion of one of the 3 nylon tubes
leaving 1/2” protruding from the rear of the
stopper. This will be the fuel pick up tube.
Repeat the procedure for the other wing
half.
2) Using a modeling knife, cut one length
of silicon fuel line. Connect one end of the line
to the weighted fuel pick up and the other end
to the nylon pick up tube.
ENGINE MOUNT.
See pictures below ( Engine mount do not
include ) :
3) Carefully bend the second nylon tube
up at a 45º angle. This tube is the vent tube.
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EDGE 540.
Instruction Manual.
5) With the stopper assembly in place,
the weighted pick up should rest away from
the rear of the tank and move freely inside the
tank. The top of the vent tube should rest just
below the top of the tank. It should not touch
the top of the tank.
6) When satisfied with the alignment of
the stopper assembly tighten the 3 x 20mm
machine screw until the rubber stopper expands and seals the tank opening. Do not
overtighten the assembly as this could cause
the tank to split.
Silicon tubing not inclued.
Attach the silicone fuel and pressure pipes
to the tank. The lower pipe is the ‘feed’ and the
upper two the ‘pressure and fill’. The fill pipe is
the next pipe.
Vent tube.
Fuel pick up
tube.
Fuel fill tube.
Carefully use a lighter or heat gun to
permenently set the angle of the vent tube.
Important: When the stopper assembly is
installed in the tank, the top of the vent tube
should rest just below the top surface of the
tank. It should not touch the top of the tank.
4) Test fit the stopper assembly into the
tank. It may be necessary to remove some of
the flashing around the tank opening using a
modeling knife. If flashing is present, make
sure none falls into the tank.
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You should mark which tube is the vent
and which is the fuel pick up when you attach
fuel tubing to the tubes in the stopper. Once
the tank is installed inside the fuselage, it may
be difficult to determine which is which.
Rubber band.
Fuel tank.
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Vent tube.
7mm.
14mm.
3) You have to trim each axles and using a
tool cutting and cut-off wheel.
Fuel pick up
tube.
Fuel fill tube.
Caution when cutting the axles and wear
protective goggles.
Blow through one of the lines to ensure
the fuel lines have not become kinked inside
the fuel tank compartment. Air should flow
through easily.
57mm.
WHEEL AND WHEEL PANTS.
1) Assembling and mounting the wheel
pants as shown below pictures.
Plywood Washer.
2) Follow diagram below for wheel pant
installation:
Plywood Washer.
Wheel Collar.
Axle.
Thread locker.
Nut.
Nut.
Wheel.
Landing Gear.
Wheel Pant.
Plywood washer.
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EDGE 540.
Instruction Manual.
INSTALLING THE FUSELAGE SERVO.
Engine 2 stroke.
Throttle servo.
Landing gear.
Rudder servo.
Engine 4 stroke.
Servo tray.
4) A drop of Thread locker glue on the
wheel collar screws will help keep them from
coming lose during operation.
Repeat the process for the other
wheel.
INSTALLING THE MAIN LANDING
GEAR.
C/A glue.
1) The blind nuts for securing the landing
gear are already mounted inside the fuselage.
2) Using the hardware provided, mount the
main landing gear to the fuselage.
Throttle servo.
6mm X 20mm.
Rudder
servo.
ELEVATOR SERVO INSTALLATION.
1) Locate and cut out the covering film
from the servo holes in both sides of fuselage.
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Left side.
4) Remove the engine. Using an drill bit,
drill the mounting holes through the engine
mount at the four locations marked.
Remove
covering.
2) Install the rubber grommets and brass
collets onto the elevator servo. Test fit the
servo into the elevator servo mount.
Because the size of servos differ, you
may need to adjust the size of the precut opening in the mount. The notch in the sides of the
mount allow the servo lead to pass through.
150mm.
3) Secure the servos with the screws provided with your radio system.
Right side.
4.2mm.
Elevator servo.
Left side.
5) Bolt the engine to the engine mount using
the four machine screws. Double check that
all the screws are tight before proceeding.
Elevator servo.
MOUNTING THE ENGINE.
1) Install the pushrod housing through the
predrilled hole in the firewall and into the servo
compartment. The pushrod housing should
protrude 1/4" out past the front of the firewall.
6) Attach the Z-Bend in the pushrod wire to
the throttle arm on the carburetor. You will need
to remove the throttle arm from the car- buretor
to be able to attach the Z-bend. When
complete, re-attach the throttle arm to the carburetor.
Engine 2 stroke.
Make a Z-Bend 1/4" from one end of the plain
wire pushrod.
2) Place your engine onto the engine
mount. Adjust the engine is centered of the
edges of the engine case.
3) When you are satisfied with the alignment, mark the locations of the engine
mounting.
4x30mm.
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EDGE 540.
Instruction Manual.
2) While keeping the back edge of the
cowl flush with the marks, align the front of
the cowl with the crankshaft of the engine. The
front of the cowl should be positioned so the
crankshaft is in nearly the middle of the cowl
opening. Use the spinner backplate as a guide.
Hold the cowl firmly in place using pieces of
masking tape.
Engine 4 stroke.
Pushrod
wire.
Because of the diameter of the cowl, it
may be necessary to use a needle valve extension for the high speed needle valve. Make
this out of sufficient length 1.5mm wire and install it into the end of the needle valve. Secure the wire in place by tightening the set
screw in the side of the needle valve.
1.5mm wire
(needle valve).
Thread locker.
COWLING.
1) Slide the fiberglass cowl over the engine and line up the back edge of the cowl with
the marks you made on the fuselage then trim
and cut.
Trim and cut.
3) Slide the cowl back over the engine
and secure it in place using six 3 x 10mm wood
screws. See picture below.
3x10mm.
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4) Install the muffler and muffler extension
onto the engine and make the cutout in the
cowl for muffler clearance. Connect the fuel
and pressure lines to the carburetor, muffler
and fuel filler valve.
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3x10mm(6pcs).
INSTALLING THE SWITCH.
Install the switch into the precut hole in the
side of the fuselage.
INSTALLING THE SPINNER.
1) Install the spinner backplate, propeller
and spinner cone. (spinner is not included).
The propeller should not touch any part
of the spinner cone. If it does, use a sharp
modeling knife and carefully trim away the
spinner cone where the propeller comes in
contact with it.
Remove covering.
Switch.
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EDGE 540.
Instruction Manual.
INSTALLING HORIZONTAL FIN.
1) Remove the covering at the rear tail root
of horizontal fin as picture shown below.
2)Sand the aluminium tube using
sandpaper. This will improve the bond of the
epoxy to the cardboard horizontal fin.
Coat both sides of one half of the aluminium
tube with 30 minute epoxy. Next, pour some
epoxy into the cardboard horizontal fin. Use
enough epoxy to fill any gaps.
3) Insert aluminium tube into the cardboard
of fuselage.
3x10mm.
VERTICAL STABILIZER INSTALLATION.
Hinge.
4) Slide the two horizontal fin halves
together and carefully align them at the
possition on the fuselage. Wipe away any
excess epoxy using paper towels.
1) Using a modeling knife, remove the
covering from over the precut hinge slot cut
into the lower rear portion of the fuselage. This
slot accepts the lower rudder hinge.
Remove
covering.
5) Bolt the horizontal fin to the fuselage
using the 4 machine screws (3x10mm).
Double cheek that all the screws are tight
before proceeding.
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2) Slide the vertical stabilizer into the slot
in the top of the fuselage. The rear edge of
the stabilizer should be flush with the rear edge
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of the fuselage and the lower rudder hinge
should engage the precut hinge slot in the
lower fuselage. The bottom edge of the stabilizer should also be firmly pushed against the
top of the horizontal stabilizer.
When cutting through the covering to remove it, cut with only enough pressure to only
cut through the covering itself. Cutting into
the balsa structure may weaken it.
5) Slide the vertical stabilizer back in
place. Using a triangle, check to ensure that
the vertical stabilizer is aligned 90º to the horizontal stabilizer.
Horizontal
Stabilizer.
3) While holding the vertical stabilizer
firmly in place, use a pen and draw a line on
each side of the vertical stabilizer where it
meets the top of the fuselage.
pen.
90º
Vertical
Stabilizer.
6) When you are sure that everything is
aligned correctly, mix up a generous amount of
30 Minute Epoxy. Apply a thin layer to the mounting slot in the top of the fuselage and to the sides
and bottom of the vertical stabilizer mounting
area. Apply epoxy to the bottom and top edges
of the filler block and to the lower hinge also.
Set the stabilizer in place and realign. Double
check all of your measurements once more before the epoxy cures. Hold the stabilizer in place
with T-pins or masking tape and remove any
excess epoxy using a paper towel and rubbing
alcohol. Allow the epoxy to fully cure before
proceeding.
Hinge.
4) Remove the stabilizer. Using a modeling knife, remove the covering from below the
lines you drew.
C/A glue.
Remove
covering.
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EDGE 540.
Instruction Manual.
AILERON CONTROL HORN INSTALLATION.
Repeat the procedure for orther wing.
ELEVATOR CONTROL HORN INSTALLATION.
Repeat the procedure for the elevator control
horn as same as the way of aileron control horn.
3x50mm.
Horizontal fin.
Elevator.
1) Aileron control horn:
Mix a small amount of 30 minute epoxy and
lightly coat the inside of the hole in the aileron
and the 3x50mm control horn screw.
Wing.
Aileron.
2) Thread the screw (insert the washer)
into the hole from the top of surface. Wipe away
any excess epoxy on the wing and screw with
rubbing alcohol and a paper towel. Screw the
M3 nut (insert the washer) in place as shown.
Alllow the epoxy to fully cure.
Wing bottom.
M3 lock nut.
Elevator control horn.
Repeat the procedure for orther
elevator.
ELEVATOR PUSHROD INSTALLATION.
M3 nut.
M3 control horn.
Elevator pushrods assembly follow pictures
below.
Aluminium washer.
Pushrod L= 138mm .
Wing bottom.
M3 lock.
Metal clevis.
Aileron control horn.
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Center the servo using the radio system.
Attach the servo arm to the servo using the
screw provided with the servo.
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Elevator pushrod.
vetical fin.
Repeat the procedure for orther
elevator.
AILERON PUSHROD INSTALLATION.
Repeat the procedure for wing panel as
same as elevator pushrod.
Rudder
control horn.
Pushrod L= 125mm .
Metal clevis.
RUDDER PULL - PULL CABLE SYSTEM.
See pictures below:
Repeat the procedure for orther
aileron.
RUDDER CONTROL HORN
INSTALLATION.
Rudder control horn:
Using the same tectniques used aileron control
horn. See picture below.
M3 lock nut.
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EDGE 540.
Instruction Manual.
Cable wire.
1) Insert servo arm into servo.
MOUNTING THE TAIL WHEEL.
See picture below
M3 x20 mm.
2) With the radio on, check the operation
of the rudder. Adjust the cables so when the
rudder servo is centered, the rudder is
centered as well. There will be tension on the
cables. Adjustments can be made at the rudder
control horn and at the servo arm. Once
adjustments are made, secure the servo arm
to the rudder arm servo using the screw that
came with the servo
Rudder.
Right side.
Cable.
M3 x20 mm.
Pushrod.
Cable.
Metal clevis.
Control horn.
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Receiver.
Battery.
Tie wrap.
THROTTLE SERVO ARM
INSTALLATION.
1) Install adjustable servo connector in
the servo arm.
Adjustable Servo
connector.
Servo arm.
Antenna wire.
2) Install the pushrod throttle.
Throttle.
Antenna.
ATTACHMENT WING-FUSELAGE.
INSTALLING THE BATTERY-RECEIVER.
Attach the aluminium tube into fuselage.
1) Plug the servo leads and the switch
lead into the receiver. Plug the battery pack
lead into the switch also.
2) Wrap the receiver and battery pack in
the protective foam rubber to protect them
from vibration.
3) Route the antenna in the antenna tube
inside the fuselage and secure it to the bottom of fuselage using a plastic tape. See picture below.
Insert two wing panels as pictures below:
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EDGE 540.
Instruction Manual.
BALANCING.
It is critical that your airplane be balanced
correctly. Improper balance will cause your
plane to lose control and crash. The center of
gravity is located 95-110mm back from the
leading edge of the wing, measured at the
Wing Tip.
Wing bolt.
95 - 110mm.
CONTROL THROWS.
1) We highly recommend setting up the
EDGE 540 using the control throws listed at
right. We have listed control throws for both
Low Rate (initial test flying/sport flying) and
High Rate (aerobatic flying).
2) Turn on the radio system, and with the
trim tabs on the transmitter in neutral, center
the control surfaces by making adjustments
to the clevises or adjustable servo connectors.
The servo arms should be centered also.
Wing bolt.
3) When the elevator, rudder and aileron
control surfaces are centered, use a ruler and
check the amount of the control throw in each
surface. The control throws should be
measured at the widest point of each surface!
INITIAL FLYING/SPORT FLYING
Ailerons :
Elevator :
Rudder :
3/16” up 3/16” down
3/8” up 3/8” down
3/4 right 3/4 left
AEROBATIC FLYING
Ailerons :
Elevator :
Rudder :
3/8” up 3/8” down
7/8” up 7/8” down
1-1/4” right 1-1/4” left
Do not use the aerobatic settings for
initial test flying or sport flying.
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4) By moving the position of the adjustable control horn out from the control surface,
you will decrease the amount of throw of that
control surface. Moving the adjustable control horn toward the control surface will increase the amount of throw.
FLIGHT PREPARATION.
A) Check the operation and direction of
the elevator, rudder, ailerons and throttle.
B) Plug in your radio system per the
manufacturer's instructions and turn everything on.
C) Check the elevator first. Pull back on
the elevator stick. The elevator halves should
move up. If it they do not, flip the servo reversing switch on your transmitter to change
the direction.
D) Check the rudder. Looking from behind the airplane, move the rudder stick to the
right. The rudder should move to the right. If it
does not, flip the servo reversing switch on
your transmitter to change the direction.
5) If your radio transmitter is equipped
with dual rate switches double check that they
are on the low rate setting for your first few
flights.
6) Check to ensure the control surfaces
are moving the proper amount for both low
and high rate settings.
7) Check the receiver antenna. It should
be fully extended and not coiled up inside the
fuselage.
8) Properly balance the propeller. An out
of balance propeller will cause excessive vibration which could lead to engine and/or airframe failure.
We wish you many safe and enjoyable
flights with your EDGE 540.
E) Check the throttle. Moving the throttle
stick forward should open the carburetor barrel. If it does not, flip the servo reversing switch
on your transmitter to change the direction.
F) From behind the airplane, look at the
aileron on the right wing half. Move the aileron
stick to the right. The right aileron should move
up and the other aileron should move down. If
it does not, flip the servo reversing switch on
your transmitter to change the direction.
PREFLIGHT CHECK.
1) Completely charge your transmitter
and receiver batteries before your first day of
flying.
2) Check every bolt and every glue joint
in the EDGE 540 to ensure that everything is
tight and well bonded.
3) Double check the balance of the airplane. Do this with the fuel tank empty.
4) Check the control surfaces. All should
move in the correct direction and not bind in
any way.
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EDGE 540.
Instruction Manual.
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modify this warranty without notice and disclaims all other warranties, express or implied.
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Inspection or Repairs
If this Product needs to be inspected or repaired, please call for a Return Merchandise Authorization (RMA). Pack the
Product securely using a shipping carton. Please note that original boxes may be included, but are not designed to
withstand the rigors of shipping without additional protection. Ship via a carrier that provides tracking and insurance
for lost or damaged parcels, as Horizon is not responsible for merchandise until it arrives and is accepted at our
facility. A Service Repair Request is available at www.horizonhobby.com on the “Support” tab. If you do not have
internet access, please include a letter with your complete name, street address, email address and phone
number where you can be reached during business days, your RMA number, a list of the included items, method of
payment for any non-warranty expenses and a brief summary of the problem. Your original sales receipt must also
be included for warranty consideration. Be sure your name, address, and RMA number are clearly written on the
outside of the shipping carton.
Warranty Inspection and Repairs
To receive warranty service, you must include your original sales receipt verifying the proof-of-purchase date.
Provided warranty conditions have been met, your Product will be repaired or replaced free of charge. Repair or
replacement decisions are at the sole discretion of Horizon Hobby.
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Non-Warranty Repairs
Should your repair not be covered by warranty the repair will be completed and payment will be required
without notification or estimate of the expense unless the expense exceeds 50% of the retail purchase cost. By
submitting the item for repair you are agreeing to payment of the repair without notification. Repair estimates are
available upon request. You must include this request with your repair. Non-warranty repair estimates will be billed
a minimum of ½ hour of labor. In addition you will be billed for return freight. Please advise us of your preferred
method of payment. Horizon accepts money orders and cashiers checks, as well as Visa, MasterCard, American
Express, and Discover cards. If you choose to pay by credit card, please include your credit card number and
expiration date. Any repair left unpaid or unclaimed after 90 days will be considered abandoned and will be disposed
of accordingly. Please note: non-warranty repair is only available on electronics and model engines.
Electronics and engines requiring inspection or repair should be shipped to the following address:
Horizon Service Center
4105 Fieldstone Road
Champaign, Illinois 61822
All other Products requiring warranty inspection or repair should be shipped to the following address:
Horizon Product Support
4105 Fieldstone Road
Champaign, Illinois 61822
Please call 877-504-0233 with any questions or concerns regarding this product or warranty.
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